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Noise Coupling Mitigation in PWR/GND Plane Pair by Means of Photonic Crystal Fence: Sensitivity Analysis and Design Parameters Extraction

机译:利用光子晶体栅栏减轻PWR / GND平面对中的噪声耦合:灵敏度分析和设计参数提取

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摘要

A photonic crystal fence is proposed for simultaneous switching noise mitigation in power/ground plane pairs with minimum use of the high dielectric constant for the rods. In particular a 45 degree rotated square lattice consisting in three rows of periodic rows is used for the fence. Broadband and high efficient noise suppression can be still achieved while minimizing the cost of the structure. A sensitivity analysis investigating the impact of 1) the normalized rods radius, 2) the number of rods rows, and 3) the value of the dielectric rods is performed and design parameters for the calculation of the stop bands are extracted. The normalized radius is not sufficient to correctly predict the stop band of the fence; instead multiple design parameters are necessary. It is found that an extra row of high dielectric constant material introduces an attenuation for the noise coefficient of around 8–10 dB per row and multiple stop bands are predicted while increasing the relative dielectric constant of the rods from 50 to 300. A one-dimensional circuit model is finally developed for a quick and efficient prediction of the stop band performances of these structures.
机译:提出了一种光子晶体栅栏,用于同时减小功率/地平面对中的开关噪声,同时最小化了棒的高介电常数。特别地,由三排周期性的行组成的45度旋转的方格被用于栅栏。仍可实现宽带和高效噪声抑制,同时将结构成本降至最低。进行敏感性分析,调查以下因素的影响:1)归一化的棒半径,2)棒的行数和3)介电棒的值,并提取用于计算阻带的设计参数。归一化的半径不足以正确预测围栏的阻带。而是需要多个设计参数。结果发现,额外一排高介电常数材料会导致噪声系数衰减,每行大约8-10 dB,并且在将棒的相对介电常数从50增加到300的同时,预测了多个阻带。最终开发了尺寸电路模型,用于快速有效地预测这些结构的阻带性能。

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